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We study 2 2 matrices over noncommutative rings with anti-involution, with a special focus on the symplectic group Sp₂ (A, ). We define traces and determinants of such matrices and use them to prove a Cayley Hamilton identity and trace relations which generalize well known relations for elements of SL₂ (R) over a commutative ring. We compare the structure of elements of Sp₂ (A, ) with Manin matrices over general noncommutative rings; this naturally leads to a quantization Sp₂ (A, ) q. In contrast to the usual definition of the quantum group as a deformation of the ring of matrix functions on SL₂ (R), this quantization produces a group of matrices over a new noncommutative ring with involution. We finish the comparison by constructing a generalization of a Hopf algebra structure on the noncommutative ring of matrix functions of our quantum group. Finally, we use the noncommutative surface-type cluster algebras of Berenstein and Retakh to give a geometric interpretation of our Hopf algebra structure and to produce noncommutative generalizations of Markov numbers over many rings with involution including the complex numbers, dual numbers, matrix rings, and group rings.
Greenberg et al. (Thu,) studied this question.